Coverage Report

Created: 2025-10-12 06:56

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/libidn/lib/nfkc.c
Line
Count
Source
1
/* nfkc.c --- Unicode normalization utilities.
2
   Copyright (C) 2002-2025 Simon Josefsson
3
4
   This file is part of GNU Libidn.
5
6
   GNU Libidn is free software: you can redistribute it and/or
7
   modify it under the terms of either:
8
9
     * the GNU Lesser General Public License as published by the Free
10
       Software Foundation; either version 3 of the License, or (at
11
       your option) any later version.
12
13
   or
14
15
     * the GNU General Public License as published by the Free
16
       Software Foundation; either version 2 of the License, or (at
17
       your option) any later version.
18
19
   or both in parallel, as here.
20
21
   GNU Libidn is distributed in the hope that it will be useful,
22
   but WITHOUT ANY WARRANTY; without even the implied warranty of
23
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
24
   General Public License for more details.
25
26
   You should have received copies of the GNU General Public License and
27
   the GNU Lesser General Public License along with this program.  If
28
   not, see <https://www.gnu.org/licenses/>. */
29
30
#ifdef HAVE_CONFIG_H
31
# include "config.h"
32
#endif
33
34
#include <stdlib.h>
35
#include <string.h>
36
37
#include "stringprep.h"
38
39
/* Hacks to make syncing with GLIB code easier. */
40
9.45M
#define gboolean int
41
28.0M
#define gchar char
42
#define guchar unsigned char
43
14.0M
#define gint int
44
15.2M
#define guint unsigned int
45
2.19M
#define gushort unsigned short
46
#define gint16 int16_t
47
#define guint16 uint16_t
48
72.8M
#define gunichar uint32_t
49
58.3M
#define gsize size_t
50
#define gssize ssize_t
51
33.0M
#define g_malloc malloc
52
0
#define g_free free
53
15.0M
#define g_return_val_if_fail(expr,val)  {   \
54
15.0M
    if (!(expr))         \
55
15.0M
      return (val);         \
56
15.0M
  }
57
58
/* Code from GLIB gmacros.h starts here. */
59
60
/* GLIB - Library of useful routines for C programming
61
 * Copyright (C) 1995-1997  Peter Mattis, Spencer Kimball and Josh MacDonald
62
 *
63
 * This library is free software; you can redistribute it and/or
64
 * modify it under the terms of the GNU Lesser General Public
65
 * License as published by the Free Software Foundation; either
66
 * version 2 of the License, or (at your option) any later version.
67
 *
68
 * This library is distributed in the hope that it will be useful,
69
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
70
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
71
 * Lesser General Public License for more details.
72
 */
73
74
#ifndef FALSE
75
130M
# define  FALSE (0)
76
#endif
77
78
#ifndef TRUE
79
126M
# define  TRUE  (!FALSE)
80
#endif
81
82
10.3M
#define G_N_ELEMENTS(arr)   (sizeof (arr) / sizeof ((arr)[0]))
83
84
14.6M
#define G_UNLIKELY(expr) (expr)
85
86
/* Code from GLIB gunicode.h starts here. */
87
88
/* gunicode.h - Unicode manipulation functions
89
 *
90
 *  Copyright (C) 1999, 2000 Tom Tromey
91
 *  Copyright 2000, 2005 Red Hat, Inc.
92
 *
93
 * The Gnome Library is free software; you can redistribute it and/or
94
 * modify it under the terms of the GNU Lesser General Public License as
95
 * published by the Free Software Foundation; either version 2 of the
96
 * License, or (at your option) any later version.
97
 *
98
 * The Gnome Library is distributed in the hope that it will be useful,
99
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
100
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
101
 * Lesser General Public License for more details.
102
 */
103
104
typedef enum
105
{
106
  G_NORMALIZE_DEFAULT,
107
  G_NORMALIZE_NFD = G_NORMALIZE_DEFAULT,
108
  G_NORMALIZE_DEFAULT_COMPOSE,
109
  G_NORMALIZE_NFC = G_NORMALIZE_DEFAULT_COMPOSE,
110
  G_NORMALIZE_ALL,
111
  G_NORMALIZE_NFKD = G_NORMALIZE_ALL,
112
  G_NORMALIZE_ALL_COMPOSE,
113
  G_NORMALIZE_NFKC = G_NORMALIZE_ALL_COMPOSE
114
}
115
GNormalizeMode;
116
117
30.8M
#define g_utf8_next_char(p) ((p) + g_utf8_skip[*(const guchar *)(p)])
118
119
/* Code from GLIB gutf8.c starts here. */
120
121
/* gutf8.c - Operations on UTF-8 strings.
122
 *
123
 * Copyright (C) 1999 Tom Tromey
124
 * Copyright (C) 2000 Red Hat, Inc.
125
 *
126
 * This library is free software; you can redistribute it and/or
127
 * modify it under the terms of the GNU Lesser General Public
128
 * License as published by the Free Software Foundation; either
129
 * version 2 of the License, or (at your option) any later version.
130
 *
131
 * This library is distributed in the hope that it will be useful,
132
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
133
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
134
 * Lesser General Public License for more details.
135
 */
136
137
#define UTF8_COMPUTE(Char, Mask, Len)   \
138
12.8M
  if (Char < 128)       \
139
12.8M
    {           \
140
990k
      Len = 1;          \
141
990k
      Mask = 0x7f;        \
142
990k
    }            \
143
12.8M
  else if ((Char & 0xe0) == 0xc0)   \
144
11.8M
    {           \
145
10.7M
      Len = 2;          \
146
10.7M
      Mask = 0x1f;        \
147
10.7M
    }            \
148
11.8M
  else if ((Char & 0xf0) == 0xe0)   \
149
1.11M
    {           \
150
1.04M
      Len = 3;          \
151
1.04M
      Mask = 0x0f;        \
152
1.04M
    }            \
153
1.11M
  else if ((Char & 0xf8) == 0xf0)   \
154
69.2k
    {           \
155
69.2k
      Len = 4;          \
156
69.2k
      Mask = 0x07;        \
157
69.2k
    }            \
158
69.2k
  else if ((Char & 0xfc) == 0xf8)   \
159
0
    {           \
160
0
      Len = 5;          \
161
0
      Mask = 0x03;        \
162
0
    }            \
163
0
  else if ((Char & 0xfe) == 0xfc)   \
164
0
    {           \
165
0
      Len = 6;          \
166
0
      Mask = 0x01;        \
167
0
    }            \
168
0
  else            \
169
0
    Len = -1;
170
171
#define UTF8_LENGTH(Char)     \
172
15.2M
  ((Char) < 0x80 ? 1 :        \
173
15.2M
   ((Char) < 0x800 ? 2 :      \
174
14.3M
    ((Char) < 0x10000 ? 3 :      \
175
396k
     ((Char) < 0x200000 ? 4 :      \
176
40.4k
      ((Char) < 0x4000000 ? 5 : 6)))))
177
178
#define UTF8_GET(Result, Chars, Count, Mask, Len)           \
179
12.8M
  (Result) = (Chars)[0] & (Mask);               \
180
25.8M
  for ((Count) = 1; (Count) < (Len); ++(Count))             \
181
13.0M
    {                       \
182
13.0M
      if (((Chars)[(Count)] & 0xc0) != 0x80)             \
183
13.0M
  {                     \
184
0
    (Result) = -1;                  \
185
0
    break;                    \
186
0
  }                      \
187
13.0M
      (Result) <<= 6;                   \
188
13.0M
      (Result) |= ((Chars)[(Count)] & 0x3f);              \
189
13.0M
    }
190
191
static const gchar utf8_skip_data[256] = {
192
  1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
193
  1, 1, 1, 1, 1, 1, 1,
194
  1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
195
  1, 1, 1, 1, 1, 1, 1,
196
  1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
197
  1, 1, 1, 1, 1, 1, 1,
198
  1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
199
  1, 1, 1, 1, 1, 1, 1,
200
  1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
201
  1, 1, 1, 1, 1, 1, 1,
202
  1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
203
  1, 1, 1, 1, 1, 1, 1,
204
  2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
205
  2, 2, 2, 2, 2, 2, 2,
206
  3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 4, 4, 4, 4, 4, 4, 4, 4, 5,
207
  5, 5, 5, 6, 6, 1, 1
208
};
209
210
static const gchar *const g_utf8_skip = utf8_skip_data;
211
212
/*
213
 * g_utf8_strlen:
214
 * @p: pointer to the start of a UTF-8 encoded string
215
 * @max: the maximum number of bytes to examine. If @max
216
 *       is less than 0, then the string is assumed to be
217
 *       nul-terminated. If @max is 0, @p will not be examined and
218
 *       may be %NULL.
219
 *
220
 * Computes the length of the string in characters, not including
221
 * the terminating nul character.
222
 *
223
 * Return value: the length of the string in characters
224
 **/
225
static gsize
226
g_utf8_strlen (const gchar *p)
227
704k
{
228
704k
  gsize len = 0;
229
230
704k
  g_return_val_if_fail (p != NULL, 0);
231
232
3.14M
  while (*p)
233
2.44M
    {
234
2.44M
      p = g_utf8_next_char (p);
235
2.44M
      ++len;
236
2.44M
    }
237
238
704k
  return len;
239
704k
}
240
241
/*
242
 * g_utf8_get_char:
243
 * @p: a pointer to Unicode character encoded as UTF-8
244
 *
245
 * Converts a sequence of bytes encoded as UTF-8 to a Unicode character.
246
 * If @p does not point to a valid UTF-8 encoded character, results are
247
 * undefined. If you are not sure that the bytes are complete
248
 * valid Unicode characters, you should use g_utf8_get_char_validated()
249
 * instead.
250
 *
251
 * Return value: the resulting character
252
 **/
253
static gunichar
254
g_utf8_get_char (const gchar *p)
255
12.8M
{
256
12.8M
  int i, mask = 0, len;
257
12.8M
  gunichar result;
258
12.8M
  unsigned char c = (unsigned char) *p;
259
260
12.8M
  UTF8_COMPUTE (c, mask, len);
261
12.8M
  if (len == -1)
262
0
    return (gunichar) - 1;
263
12.8M
  UTF8_GET (result, p, i, mask, len);
264
265
12.8M
  return result;
266
12.8M
}
267
268
/*
269
 * g_unichar_to_utf8:
270
 * @c: a Unicode character code
271
 * @outbuf: output buffer, must have at least 6 bytes of space.
272
 *       If %NULL, the length will be computed and returned
273
 *       and nothing will be written to @outbuf.
274
 *
275
 * Converts a single character to UTF-8.
276
 *
277
 * Return value: number of bytes written
278
 **/
279
static int
280
g_unichar_to_utf8 (gunichar c, gchar *outbuf)
281
15.2M
{
282
  /* If this gets modified, also update the copy in g_string_insert_unichar() */
283
15.2M
  guint len = 0;
284
15.2M
  int first;
285
15.2M
  int i;
286
287
15.2M
  if (c < 0x80)
288
860k
    {
289
860k
      first = 0;
290
860k
      len = 1;
291
860k
    }
292
14.3M
  else if (c < 0x800)
293
13.9M
    {
294
13.9M
      first = 0xc0;
295
13.9M
      len = 2;
296
13.9M
    }
297
396k
  else if (c < 0x10000)
298
355k
    {
299
355k
      first = 0xe0;
300
355k
      len = 3;
301
355k
    }
302
40.4k
  else if (c < 0x200000)
303
40.4k
    {
304
40.4k
      first = 0xf0;
305
40.4k
      len = 4;
306
40.4k
    }
307
0
  else if (c < 0x4000000)
308
0
    {
309
0
      first = 0xf8;
310
0
      len = 5;
311
0
    }
312
0
  else
313
0
    {
314
0
      first = 0xfc;
315
0
      len = 6;
316
0
    }
317
318
15.2M
  if (outbuf)
319
15.2M
    {
320
30.0M
      for (i = len - 1; i > 0; --i)
321
14.8M
  {
322
14.8M
    outbuf[i] = (c & 0x3f) | 0x80;
323
14.8M
    c >>= 6;
324
14.8M
  }
325
15.2M
      outbuf[0] = c | first;
326
15.2M
    }
327
328
15.2M
  return len;
329
15.2M
}
330
331
/*
332
 * g_utf8_to_ucs4_fast:
333
 * @str: a UTF-8 encoded string
334
 * @len: the maximum length of @str to use, in bytes. If @len < 0,
335
 *       then the string is nul-terminated.
336
 * @items_written: location to store the number of characters in the
337
 *                 result, or %NULL.
338
 *
339
 * Convert a string from UTF-8 to a 32-bit fixed width
340
 * representation as UCS-4, assuming valid UTF-8 input.
341
 * This function is roughly twice as fast as g_utf8_to_ucs4()
342
 * but does no error checking on the input. A trailing 0 character
343
 * will be added to the string after the converted text.
344
 *
345
 * Return value: a pointer to a newly allocated UCS-4 string.
346
 *               This value must be freed with g_free().
347
 **/
348
static gunichar *
349
g_utf8_to_ucs4_fast (const gchar *str, gssize len, gsize *items_written)
350
14.3M
{
351
14.3M
  gunichar *result;
352
14.3M
  gsize n_chars, i;
353
14.3M
  const gchar *p;
354
355
14.3M
  g_return_val_if_fail (str != NULL, NULL);
356
357
14.3M
  p = str;
358
14.3M
  n_chars = 0;
359
14.3M
  if (len < 0)
360
14.3M
    {
361
29.8M
      while (*p)
362
15.5M
  {
363
15.5M
    p = g_utf8_next_char (p);
364
15.5M
    ++n_chars;
365
15.5M
  }
366
14.3M
    }
367
0
  else
368
0
    {
369
0
      while (p < str + len && *p)
370
0
  {
371
0
    p = g_utf8_next_char (p);
372
0
    ++n_chars;
373
0
  }
374
0
    }
375
376
14.3M
  result = g_malloc (sizeof (gunichar) * (n_chars + 1));
377
14.3M
  if (!result)
378
0
    return NULL;
379
380
14.3M
  p = str;
381
29.8M
  for (i = 0; i < n_chars; i++)
382
15.5M
    {
383
15.5M
      gunichar wc = (guchar) * p++;
384
385
15.5M
      if (wc < 0x80)
386
953k
  {
387
953k
    result[i] = wc;
388
953k
  }
389
14.6M
      else
390
14.6M
  {
391
14.6M
    gunichar mask = 0x40;
392
393
14.6M
    if (G_UNLIKELY ((wc & mask) == 0))
394
0
      {
395
        /* It's an out-of-sequence 10xxxxxxx byte.
396
         * Rather than making an ugly hash of this and the next byte
397
         * and overrunning the buffer, it's more useful to treat it
398
         * with a replacement character */
399
0
        result[i] = 0xfffd;
400
0
        continue;
401
0
      }
402
403
14.6M
    do
404
15.2M
      {
405
15.2M
        wc <<= 6;
406
15.2M
        wc |= (guchar) (*p++) & 0x3f;
407
15.2M
        mask <<= 5;
408
15.2M
      }
409
15.2M
    while ((wc & mask) != 0);
410
411
14.6M
    wc &= mask - 1;
412
413
14.6M
    result[i] = wc;
414
14.6M
  }
415
15.5M
    }
416
14.3M
  result[i] = 0;
417
418
14.3M
  if (items_written)
419
9.68M
    *items_written = i;
420
421
14.3M
  return result;
422
14.3M
}
423
424
/*
425
 * g_ucs4_to_utf8:
426
 * @str: a UCS-4 encoded string
427
 * @len: the maximum length (number of characters) of @str to use.
428
 *       If @len < 0, then the string is nul-terminated.
429
 * @items_read: location to store number of characters read, or %NULL.
430
 * @items_written: location to store number of bytes written or %NULL.
431
 *                 The value here stored does not include the trailing 0
432
 *                 byte.
433
 * @error: location to store the error occurring, or %NULL to ignore
434
 *         errors. Any of the errors in #GConvertError other than
435
 *         %G_CONVERT_ERROR_NO_CONVERSION may occur.
436
 *
437
 * Convert a string from a 32-bit fixed width representation as UCS-4.
438
 * to UTF-8. The result will be terminated with a 0 byte.
439
 *
440
 * Return value: a pointer to a newly allocated UTF-8 string.
441
 *               This value must be freed with g_free(). If an
442
 *               error occurs, %NULL will be returned and
443
 *               @error set. In that case, @items_read will be
444
 *               set to the position of the first invalid input
445
 *               character.
446
 **/
447
static gchar *
448
g_ucs4_to_utf8 (const gunichar *str,
449
    gsize len, gsize *items_read, gsize *items_written)
450
14.0M
{
451
14.0M
  gint result_length;
452
14.0M
  gchar *result = NULL;
453
14.0M
  gchar *p;
454
14.0M
  gsize i;
455
456
14.0M
  result_length = 0;
457
29.2M
  for (i = 0; i < len; i++)
458
15.2M
    {
459
15.2M
      if (!str[i])
460
0
  break;
461
462
15.2M
      if (str[i] >= 0x80000000)
463
0
  goto err_out;
464
465
15.2M
      result_length += UTF8_LENGTH (str[i]);
466
15.2M
    }
467
468
14.0M
  result = g_malloc (result_length + 1);
469
14.0M
  if (!result)
470
0
    return NULL;
471
14.0M
  p = result;
472
473
14.0M
  i = 0;
474
29.2M
  while (p < result + result_length)
475
15.2M
    p += g_unichar_to_utf8 (str[i++], p);
476
477
14.0M
  *p = '\0';
478
479
14.0M
  if (items_written)
480
0
    *items_written = p - result;
481
482
14.0M
err_out:
483
14.0M
  if (items_read)
484
0
    *items_read = i;
485
486
14.0M
  return result;
487
14.0M
}
488
489
/* Code from GLIB gunidecomp.c starts here. */
490
491
/* decomp.c - Character decomposition.
492
 *
493
 *  Copyright (C) 1999, 2000 Tom Tromey
494
 *  Copyright 2000 Red Hat, Inc.
495
 *
496
 * The Gnome Library is free software; you can redistribute it and/or
497
 * modify it under the terms of the GNU Lesser General Public License as
498
 * published by the Free Software Foundation; either version 2 of the
499
 * License, or (at your option) any later version.
500
 *
501
 * The Gnome Library is distributed in the hope that it will be useful,
502
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
503
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
504
 * Lesser General Public License for more details.
505
 */
506
507
#include "gunidecomp.h"
508
#include "gunicomp.h"
509
510
#define CC_PART1(Page, Char)            \
511
25.8M
  ((combining_class_table_part1[Page] >= G_UNICODE_MAX_TABLE_INDEX) \
512
25.8M
   ? (combining_class_table_part1[Page] - G_UNICODE_MAX_TABLE_INDEX)  \
513
25.8M
   : (cclass_data[combining_class_table_part1[Page]][Char]))
514
515
#define CC_PART2(Page, Char)            \
516
7.04k
  ((combining_class_table_part2[Page] >= G_UNICODE_MAX_TABLE_INDEX) \
517
7.04k
   ? (combining_class_table_part2[Page] - G_UNICODE_MAX_TABLE_INDEX) \
518
7.04k
   : (cclass_data[combining_class_table_part2[Page]][Char]))
519
520
#define COMBINING_CLASS(Char)         \
521
25.9M
  (((Char) <= G_UNICODE_LAST_CHAR_PART1)     \
522
25.9M
   ? CC_PART1 ((Char) >> 8, (Char) & 0xff)     \
523
25.9M
   : (((Char) >= 0xe0000 && (Char) <= G_UNICODE_LAST_CHAR) \
524
119k
      ? CC_PART2 (((Char) - 0xe0000) >> 8, (Char) & 0xff) \
525
119k
      : 0))
526
527
/* constants for hangul syllable [de]composition */
528
27.5M
#define SBase 0xAC00
529
7.26M
#define LBase 0x1100
530
2.20M
#define VBase 0x1161
531
2.20M
#define TBase 0x11A7
532
861k
#define LCount 19
533
191k
#define VCount 21
534
195k
#define TCount 28
535
186k
#define NCount (VCount * TCount)
536
183k
#define SCount (LCount * NCount)
537
538
/*
539
 * g_unicode_canonical_ordering:
540
 * @string: a UCS-4 encoded string.
541
 * @len: the maximum length of @string to use.
542
 *
543
 * Computes the canonical ordering of a string in-place.
544
 * This rearranges decomposed characters in the string
545
 * according to their combining classes.  See the Unicode
546
 * manual for more information.
547
 **/
548
static void
549
g_unicode_canonical_ordering (gunichar *string, gsize len)
550
9.90M
{
551
9.90M
  gsize i;
552
9.90M
  int swap = 1;
553
554
19.8M
  while (swap)
555
9.90M
    {
556
9.90M
      int last;
557
9.90M
      swap = 0;
558
9.90M
      last = COMBINING_CLASS (string[0]);
559
13.8M
      for (i = 0; i < len - 1; ++i)
560
3.95M
  {
561
3.95M
    int next = COMBINING_CLASS (string[i + 1]);
562
3.95M
    if (next != 0 && last > next)
563
2.36k
      {
564
2.36k
        gsize j;
565
        /* Percolate item leftward through string.  */
566
8.37k
        for (j = i + 1; j > 0; --j)
567
8.16k
    {
568
8.16k
      gunichar t;
569
8.16k
      if (COMBINING_CLASS (string[j - 1]) <= next)
570
2.15k
        break;
571
6.01k
      t = string[j];
572
6.01k
      string[j] = string[j - 1];
573
6.01k
      string[j - 1] = t;
574
6.01k
      swap = 1;
575
6.01k
    }
576
        /* We're re-entering the loop looking at the old
577
           character again.  */
578
2.36k
        next = last;
579
2.36k
      }
580
3.95M
    last = next;
581
3.95M
  }
582
9.90M
    }
583
9.90M
}
584
585
/* http://www.unicode.org/unicode/reports/tr15/#Hangul
586
 * r should be null or have sufficient space. Calling with r == NULL will
587
 * only calculate the result_len; however, a buffer with space for three
588
 * characters will always be big enough. */
589
static void
590
decompose_hangul (gunichar s, gunichar *r, gsize *result_len)
591
2.60k
{
592
2.60k
  gint SIndex = s - SBase;
593
2.60k
  gint TIndex = SIndex % TCount;
594
595
2.60k
  if (r)
596
1.30k
    {
597
1.30k
      r[0] = LBase + SIndex / NCount;
598
1.30k
      r[1] = VBase + (SIndex % NCount) / TCount;
599
1.30k
    }
600
601
2.60k
  if (TIndex)
602
2.05k
    {
603
2.05k
      if (r)
604
1.02k
  r[2] = TBase + TIndex;
605
2.05k
      *result_len = 3;
606
2.05k
    }
607
554
  else
608
554
    *result_len = 2;
609
2.60k
}
610
611
/* returns a pointer to a null-terminated UTF-8 string */
612
static const gchar *
613
find_decomposition (gunichar ch, gboolean compat)
614
10.3M
{
615
10.3M
  int start = 0;
616
10.3M
  int end = G_N_ELEMENTS (decomp_table);
617
618
10.3M
  if (ch >= decomp_table[start].ch && ch <= decomp_table[end - 1].ch)
619
9.79M
    {
620
126M
      while (TRUE)
621
126M
  {
622
126M
    int half = (start + end) / 2;
623
126M
    if (ch == decomp_table[half].ch)
624
1.40M
      {
625
1.40M
        int offset;
626
627
1.40M
        if (compat)
628
1.40M
    {
629
1.40M
      offset = decomp_table[half].compat_offset;
630
1.40M
      if (offset == G_UNICODE_NOT_PRESENT_OFFSET)
631
800k
        offset = decomp_table[half].canon_offset;
632
1.40M
    }
633
0
        else
634
0
    {
635
0
      offset = decomp_table[half].canon_offset;
636
0
      if (offset == G_UNICODE_NOT_PRESENT_OFFSET)
637
0
        return NULL;
638
0
    }
639
640
1.40M
        return &(decomp_expansion_string[offset]);
641
1.40M
      }
642
124M
    else if (half == start)
643
8.38M
      break;
644
116M
    else if (ch > decomp_table[half].ch)
645
37.0M
      start = half;
646
79.3M
    else
647
79.3M
      end = half;
648
126M
  }
649
9.79M
    }
650
651
8.97M
  return NULL;
652
10.3M
}
653
654
/* L,V => LV and LV,T => LVT  */
655
static gboolean
656
combine_hangul (gunichar a, gunichar b, gunichar *result)
657
2.19M
{
658
2.19M
  if (a >= LBase && a < LCount + LBase && b >= VBase && b < VCount + VBase)
659
2.23k
    {
660
2.23k
      gint LIndex = a - LBase;
661
2.23k
      gint VIndex = b - VBase;
662
663
2.23k
      *result = SBase + (LIndex * VCount + VIndex) * TCount;
664
2.23k
      return TRUE;
665
2.23k
    }
666
667
2.19M
  if (a >= SBase && a < SCount + SBase && b > TBase && b < TCount + TBase)
668
1.22k
    {
669
1.22k
      gint SIndex = a - SBase;
670
671
1.22k
      if ((SIndex % TCount) == 0)
672
1.02k
  {
673
1.02k
    gint TIndex = b - TBase;
674
675
1.02k
    *result = a + TIndex;
676
1.02k
    return TRUE;
677
1.02k
  }
678
1.22k
    }
679
680
2.19M
  return FALSE;
681
2.19M
}
682
683
#define CI(Page, Char)          \
684
3.78M
  ((compose_table[Page] >= G_UNICODE_MAX_TABLE_INDEX) \
685
3.78M
   ? (compose_table[Page] - G_UNICODE_MAX_TABLE_INDEX)  \
686
3.78M
   : (compose_data[compose_table[Page]][Char]))
687
688
#define COMPOSE_INDEX(Char)           \
689
4.13M
  (((Char >> 8) > (COMPOSE_TABLE_LAST)) ? 0 : CI((Char) >> 8, (Char) & 0xff))
690
691
static gboolean
692
combine (gunichar a, gunichar b, gunichar *result)
693
2.19M
{
694
2.19M
  gushort index_a, index_b;
695
696
2.19M
  if (combine_hangul (a, b, result))
697
3.26k
    return TRUE;
698
699
2.19M
  index_a = COMPOSE_INDEX (a);
700
701
2.19M
  if (index_a >= COMPOSE_FIRST_SINGLE_START && index_a < COMPOSE_SECOND_START)
702
255k
    {
703
255k
      if (b == compose_first_single[index_a - COMPOSE_FIRST_SINGLE_START][0])
704
29.3k
  {
705
29.3k
    *result =
706
29.3k
      compose_first_single[index_a - COMPOSE_FIRST_SINGLE_START][1];
707
29.3k
    return TRUE;
708
29.3k
  }
709
226k
      else
710
226k
  return FALSE;
711
255k
    }
712
713
1.93M
  index_b = COMPOSE_INDEX (b);
714
715
1.93M
  if (index_b >= COMPOSE_SECOND_SINGLE_START)
716
2.89k
    {
717
2.89k
      if (a ==
718
2.89k
    compose_second_single[index_b - COMPOSE_SECOND_SINGLE_START][0])
719
2.45k
  {
720
2.45k
    *result =
721
2.45k
      compose_second_single[index_b - COMPOSE_SECOND_SINGLE_START][1];
722
2.45k
    return TRUE;
723
2.45k
  }
724
443
      else
725
443
  return FALSE;
726
2.89k
    }
727
728
1.93M
  if (index_a >= COMPOSE_FIRST_START && index_a < COMPOSE_FIRST_SINGLE_START
729
705k
      && index_b >= COMPOSE_SECOND_START
730
380k
      && index_b < COMPOSE_SECOND_SINGLE_START)
731
380k
    {
732
380k
      gunichar res =
733
380k
  compose_array[index_a - COMPOSE_FIRST_START][index_b -
734
380k
                 COMPOSE_SECOND_START];
735
736
380k
      if (res)
737
380k
  {
738
380k
    *result = res;
739
380k
    return TRUE;
740
380k
  }
741
380k
    }
742
743
1.55M
  return FALSE;
744
1.93M
}
745
746
static gunichar *
747
_g_utf8_normalize_wc (const gchar *str, gssize max_len, GNormalizeMode mode)
748
4.72M
{
749
4.72M
  gsize n_wc;
750
4.72M
  gunichar *wc_buffer;
751
4.72M
  const char *p;
752
4.72M
  gsize last_start;
753
4.72M
  gboolean do_compat = (mode == G_NORMALIZE_NFKC || mode == G_NORMALIZE_NFKD);
754
4.72M
  gboolean do_compose = (mode == G_NORMALIZE_NFC || mode == G_NORMALIZE_NFKC);
755
756
4.72M
  n_wc = 0;
757
4.72M
  p = str;
758
9.91M
  while ((max_len < 0 || p < str + max_len) && *p)
759
5.19M
    {
760
5.19M
      const gchar *decomp;
761
5.19M
      gunichar wc = g_utf8_get_char (p);
762
763
5.19M
      if (wc >= SBase && wc < SBase + SCount)
764
1.30k
  {
765
1.30k
    gsize result_len;
766
1.30k
    decompose_hangul (wc, NULL, &result_len);
767
1.30k
    n_wc += result_len;
768
1.30k
  }
769
5.19M
      else
770
5.19M
  {
771
5.19M
    decomp = find_decomposition (wc, do_compat);
772
773
5.19M
    if (decomp)
774
704k
      n_wc += g_utf8_strlen (decomp);
775
4.48M
    else
776
4.48M
      n_wc++;
777
5.19M
  }
778
779
5.19M
      p = g_utf8_next_char (p);
780
5.19M
    }
781
782
4.72M
  wc_buffer = g_malloc (sizeof (gunichar) * (n_wc + 1));
783
4.72M
  if (!wc_buffer)
784
0
    return NULL;
785
786
4.72M
  last_start = 0;
787
4.72M
  n_wc = 0;
788
4.72M
  p = str;
789
9.91M
  while ((max_len < 0 || p < str + max_len) && *p)
790
5.19M
    {
791
5.19M
      gunichar wc = g_utf8_get_char (p);
792
5.19M
      const gchar *decomp;
793
5.19M
      int cc;
794
5.19M
      gsize old_n_wc = n_wc;
795
796
5.19M
      if (wc >= SBase && wc < SBase + SCount)
797
1.30k
  {
798
1.30k
    gsize result_len;
799
1.30k
    decompose_hangul (wc, wc_buffer + n_wc, &result_len);
800
1.30k
    n_wc += result_len;
801
1.30k
  }
802
5.19M
      else
803
5.19M
  {
804
5.19M
    decomp = find_decomposition (wc, do_compat);
805
806
5.19M
    if (decomp)
807
704k
      {
808
704k
        const char *pd;
809
3.14M
        for (pd = decomp; *pd != '\0'; pd = g_utf8_next_char (pd))
810
2.44M
    wc_buffer[n_wc++] = g_utf8_get_char (pd);
811
704k
      }
812
4.48M
    else
813
4.48M
      wc_buffer[n_wc++] = wc;
814
5.19M
  }
815
816
5.19M
      if (n_wc > 0)
817
5.19M
  {
818
5.19M
    cc = COMBINING_CLASS (wc_buffer[old_n_wc]);
819
820
5.19M
    if (cc == 0)
821
5.18M
      {
822
5.18M
        g_unicode_canonical_ordering (wc_buffer + last_start,
823
5.18M
              n_wc - last_start);
824
5.18M
        last_start = old_n_wc;
825
5.18M
      }
826
5.19M
  }
827
828
5.19M
      p = g_utf8_next_char (p);
829
5.19M
    }
830
831
4.72M
  if (n_wc > 0)
832
4.72M
    {
833
4.72M
      g_unicode_canonical_ordering (wc_buffer + last_start,
834
4.72M
            n_wc - last_start);
835
      /* dead assignment: last_start = n_wc; */
836
4.72M
    }
837
838
4.72M
  wc_buffer[n_wc] = 0;
839
840
  /* All decomposed and reordered */
841
842
4.72M
  if (do_compose && n_wc > 0)
843
4.72M
    {
844
4.72M
      gsize i, j;
845
4.72M
      int last_cc = 0;
846
4.72M
      last_start = 0;
847
848
11.6M
      for (i = 0; i < n_wc; i++)
849
6.93M
  {
850
6.93M
    int cc = COMBINING_CLASS (wc_buffer[i]);
851
852
6.93M
    if (i > 0 &&
853
2.20M
        (last_cc == 0 || last_cc != cc) &&
854
2.19M
        combine (wc_buffer[last_start], wc_buffer[i],
855
2.19M
           &wc_buffer[last_start]))
856
415k
      {
857
842k
        for (j = i + 1; j < n_wc; j++)
858
427k
    wc_buffer[j - 1] = wc_buffer[j];
859
415k
        n_wc--;
860
415k
        i--;
861
862
415k
        if (i == last_start)
863
414k
    last_cc = 0;
864
605
        else
865
605
    last_cc = COMBINING_CLASS (wc_buffer[i - 1]);
866
867
415k
        continue;
868
415k
      }
869
870
6.51M
    if (cc == 0)
871
6.49M
      last_start = i;
872
873
6.51M
    last_cc = cc;
874
6.51M
  }
875
4.72M
    }
876
877
4.72M
  wc_buffer[n_wc] = 0;
878
879
4.72M
  return wc_buffer;
880
4.72M
}
881
882
/*
883
 * g_utf8_normalize:
884
 * @str: a UTF-8 encoded string.
885
 * @len: length of @str, in bytes, or -1 if @str is nul-terminated.
886
 * @mode: the type of normalization to perform.
887
 *
888
 * Converts a string into canonical form, standardizing
889
 * such issues as whether a character with an accent
890
 * is represented as a base character and combining
891
 * accent or as a single precomposed character. The
892
 * string has to be valid UTF-8, otherwise %NULL is
893
 * returned. You should generally call g_utf8_normalize()
894
 * before comparing two Unicode strings.
895
 *
896
 * The normalization mode %G_NORMALIZE_DEFAULT only
897
 * standardizes differences that do not affect the
898
 * text content, such as the above-mentioned accent
899
 * representation. %G_NORMALIZE_ALL also standardizes
900
 * the "compatibility" characters in Unicode, such
901
 * as SUPERSCRIPT THREE to the standard forms
902
 * (in this case DIGIT THREE). Formatting information
903
 * may be lost but for most text operations such
904
 * characters should be considered the same.
905
 *
906
 * %G_NORMALIZE_DEFAULT_COMPOSE and %G_NORMALIZE_ALL_COMPOSE
907
 * are like %G_NORMALIZE_DEFAULT and %G_NORMALIZE_ALL,
908
 * but returned a result with composed forms rather
909
 * than a maximally decomposed form. This is often
910
 * useful if you intend to convert the string to
911
 * a legacy encoding or pass it to a system with
912
 * less capable Unicode handling.
913
 *
914
 * Return value: a newly allocated string, that is the
915
 *   normalized form of @str, or %NULL if @str is not
916
 *   valid UTF-8.
917
 **/
918
static gchar *
919
g_utf8_normalize (const gchar *str, gssize len, GNormalizeMode mode)
920
0
{
921
0
  gunichar *result_wc = _g_utf8_normalize_wc (str, len, mode);
922
0
  gchar *result = NULL;
923
924
0
  if (result_wc)
925
0
    result = g_ucs4_to_utf8 (result_wc, -1, NULL, NULL);
926
927
0
  g_free (result_wc);
928
929
0
  return result;
930
0
}
931
932
/* Public Libidn API starts here. */
933
934
/**
935
 * stringprep_utf8_to_unichar:
936
 * @p: a pointer to Unicode character encoded as UTF-8
937
 *
938
 * Converts a sequence of bytes encoded as UTF-8 to a Unicode character.
939
 * If @p does not point to a valid UTF-8 encoded character, results are
940
 * undefined.
941
 *
942
 * Return value: the resulting character.
943
 **/
944
uint32_t
945
stringprep_utf8_to_unichar (const char *p)
946
0
{
947
0
  return g_utf8_get_char (p);
948
0
}
949
950
/**
951
 * stringprep_unichar_to_utf8:
952
 * @c: a ISO10646 character code
953
 * @outbuf: output buffer, must have at least 6 bytes of space.
954
 *       If %NULL, the length will be computed and returned
955
 *       and nothing will be written to @outbuf.
956
 *
957
 * Converts a single character to UTF-8.
958
 *
959
 * Return value: number of bytes written.
960
 **/
961
int
962
stringprep_unichar_to_utf8 (uint32_t c, char *outbuf)
963
0
{
964
0
  return g_unichar_to_utf8 (c, outbuf);
965
0
}
966
967
#include <unistr.h>
968
969
/**
970
 * stringprep_utf8_to_ucs4:
971
 * @str: a UTF-8 encoded string
972
 * @len: the maximum length of @str to use. If @len < 0, then
973
 *       the string is nul-terminated.
974
 * @items_written: location to store the number of characters in the
975
 *                 result, or %NULL.
976
 *
977
 * Convert a string from UTF-8 to a 32-bit fixed width representation
978
 * as UCS-4.  The function now performs error checking to verify that
979
 * the input is valid UTF-8 (before it was documented to not do error
980
 * checking).
981
 *
982
 * Return value: a pointer to a newly allocated UCS-4 string.
983
 *               This value must be deallocated by the caller.
984
 **/
985
uint32_t *
986
stringprep_utf8_to_ucs4 (const char *str, ssize_t len, size_t *items_written)
987
14.3M
{
988
14.3M
  size_t n;
989
990
14.3M
  if (len < 0)
991
14.3M
    n = strlen (str);
992
0
  else
993
0
    n = len;
994
995
14.3M
  if (u8_check ((const uint8_t *) str, n))
996
2.09k
    return NULL;
997
998
14.3M
  return g_utf8_to_ucs4_fast (str, len, items_written);
999
14.3M
}
1000
1001
/**
1002
 * stringprep_ucs4_to_utf8:
1003
 * @str: a UCS-4 encoded string
1004
 * @len: the maximum length of @str to use. If @len < 0, then
1005
 *       the string is terminated with a 0 character.
1006
 * @items_read: location to store number of characters read read, or %NULL.
1007
 * @items_written: location to store number of bytes written or %NULL.
1008
 *                 The value here stored does not include the trailing 0
1009
 *                 byte.
1010
 *
1011
 * Convert a string from a 32-bit fixed width representation as UCS-4.
1012
 * to UTF-8. The result will be terminated with a 0 byte.
1013
 *
1014
 * Return value: a pointer to a newly allocated UTF-8 string.
1015
 *               This value must be deallocated by the caller.
1016
 *               If an error occurs, %NULL will be returned.
1017
 **/
1018
char *
1019
stringprep_ucs4_to_utf8 (const uint32_t *str, ssize_t len,
1020
       size_t *items_read, size_t *items_written)
1021
14.0M
{
1022
14.0M
  return g_ucs4_to_utf8 (str, len, items_read, items_written);
1023
14.0M
}
1024
1025
/**
1026
 * stringprep_utf8_nfkc_normalize:
1027
 * @str: a UTF-8 encoded string.
1028
 * @len: length of @str, in bytes, or -1 if @str is nul-terminated.
1029
 *
1030
 * Converts a string into canonical form, standardizing
1031
 * such issues as whether a character with an accent
1032
 * is represented as a base character and combining
1033
 * accent or as a single precomposed character.
1034
 *
1035
 * The normalization mode is NFKC (ALL COMPOSE).  It standardizes
1036
 * differences that do not affect the text content, such as the
1037
 * above-mentioned accent representation. It standardizes the
1038
 * "compatibility" characters in Unicode, such as SUPERSCRIPT THREE to
1039
 * the standard forms (in this case DIGIT THREE). Formatting
1040
 * information may be lost but for most text operations such
1041
 * characters should be considered the same. It returns a result with
1042
 * composed forms rather than a maximally decomposed form.
1043
 *
1044
 * Return value: a newly allocated string, that is the
1045
 *   NFKC normalized form of @str.
1046
 **/
1047
char *
1048
stringprep_utf8_nfkc_normalize (const char *str, ssize_t len)
1049
0
{
1050
0
  size_t n;
1051
1052
0
  if (len < 0)
1053
0
    n = strlen (str);
1054
0
  else
1055
0
    n = len;
1056
1057
0
  if (u8_check ((const uint8_t *) str, n))
1058
0
    return NULL;
1059
1060
0
  return g_utf8_normalize (str, len, G_NORMALIZE_NFKC);
1061
0
}
1062
1063
#include <stdio.h>
1064
/**
1065
 * stringprep_ucs4_nfkc_normalize:
1066
 * @str: a Unicode string.
1067
 * @len: length of @str array, or -1 if @str is nul-terminated.
1068
 *
1069
 * Converts a UCS4 string into canonical form, see
1070
 * stringprep_utf8_nfkc_normalize() for more information.
1071
 *
1072
 * Return value: a newly allocated Unicode string, that is the NFKC
1073
 *   normalized form of @str.
1074
 **/
1075
uint32_t *
1076
stringprep_ucs4_nfkc_normalize (const uint32_t *str, ssize_t len)
1077
4.72M
{
1078
4.72M
  char *p;
1079
4.72M
  uint32_t *result_wc;
1080
1081
4.72M
  p = stringprep_ucs4_to_utf8 (str, len, 0, 0);
1082
4.72M
  if (!p)
1083
0
    return NULL;
1084
1085
4.72M
  result_wc = _g_utf8_normalize_wc (p, -1, G_NORMALIZE_NFKC);
1086
4.72M
  free (p);
1087
1088
4.72M
  return result_wc;
1089
4.72M
}